首页> 外文期刊>Journal of oceanography >Vertical heat transfer based on direct microstructure measurements in the ice-free Pacific-side Arctic Ocean: the role and impact of the Pacific water intrusion
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Vertical heat transfer based on direct microstructure measurements in the ice-free Pacific-side Arctic Ocean: the role and impact of the Pacific water intrusion

机译:在无冰的太平洋北冰洋中基于直接微观结构测量的垂直传热:太平洋水入侵的作用和影响

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This study quantifies diapycnal mixing and vertical heat transfer in the Pacific side of the Arctic Ocean, where sea-ice cover has disappeared between July and September in the last few decades. We conducted micro-structure measurements in the open water region around the Canada Basin from late summer to fall in 2009 and 2010 using R/V Mirai. In the study domain, the dissipation rate of turbulent kinetic energy, s, is typically as low level as O(10~(-10)) W kg~(-1), resulting in vertical heat diffusivity of 0(10~(-7)) m~2 s~(-1), which is close to the molecular diffusivity of heat, suggesting comparatively little predominance of mechanical turbulent mixing. An exception is the case at the Barrow Canyon, where the strong baroclinic throughflow generates substantial vertical mixing, producing ε > O(10~(-7)) W kg~(-1), because of the shear flow instability. Meanwhile, in the confluence region, where the warm/salty Pacific water and the cold/fresh Arctic basin water encounter, the micro-temperature profiles revealed a localized enhancement in vertical diffusivity of heat, reaching O(10~(-5)) m~2 s~(-1) or greater. In this region, an intrusion of warm Pacific water creates a horizontally interleaved structure, where the double-diffusive mixing facilitates vertical heat transfer between the intruding Pacific water and the surrounding basin waters.
机译:这项研究对北冰洋太平洋一侧的渗流混合和垂直传热进行了量化,在过去的几十年中,七月至九月间,海冰覆盖消失了。从夏末到2009年和2010年秋季,我们使用R / V Mirai在加拿大盆地周围的开放水域进行了微结构测量。在研究领域中,湍动能的耗散率s通常低至O(10〜(-10))W kg〜(-1),导致垂直热扩散率为0(10〜(- 7))m〜2 s〜(-1),接近热的分子扩散率,表明机械湍流混合的优势相对较小。在巴罗峡谷(Barrow Canyon)是一个例外,由于剪切流的不稳定性,强斜斜通流产生了很大的垂直混合,产生ε> O(10〜(-7))W kg〜(-1)。同时,在汇合区域,太平洋暖水/咸水和北极盆地冷水/鲜水相遇,微观温度剖面显示出热量垂直扩散的局部增强,达到O(10〜(-5))m 〜2 s〜(-1)或更大。在该区域,温暖的太平洋水的侵入形成了水平交错的结构,其中双扩散混合促进了侵入的太平洋水与周围盆地水之间的垂直传热。

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